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草履虫中钙依赖的复极化

Calcium-dependent repolarization in Paramecium.

作者信息

Brehm P, Dunlap K, Eckert R

出版信息

J Physiol. 1978 Jan;274:639-54. doi: 10.1113/jphysiol.1978.sp012171.

Abstract
  1. Intracellular injection, recording and current-passing methods were used to investigate the role of intracellular Ca in the modulation of electrical behaviour in the ciliate Paramecium caudatum.2. Injection of EGTA converted graded regenerative responses ascribed to Ca inward current to all-or-none action potentials. The EGTA injection also caused a discontinuity in the steady state I-V relations to outward current, but had little effect on hyperpolarizing current-voltage responses.3. The overshoot of the all-or-none spike produced by the EGTA-injected cell followed an approximate 29 mV increase for a tenfold increase in external Ca concentration and was independent of changes in external K and Na concentrations.4. The EGTA-induced all-or-none action potential tended to produce plateaus that could last up to 20 sec. During the plateau the membrane slowly repolarized to a critical potential, upon which repolarization occurred precipitously.5. Injection of 10(-6)M-free Ca(2+) as a Ca-EGTA buffer hyperpolarized the membrane and decreased the potential shifts to inward current pulses. These responses are consistent with an increase in K conductance.6. During EGTA plateaus reversed beating of the cilia indicated a rise in intracellular Ca, and thus an inability of the EGTA to complex the Ca as rapidly as it entered the cilia. Reversal of the motile apparatus thus appears to be activated at lower concentrations of intracellular Ca than are required to activate the inferred Ca-dependent K system.7. In uninjected cells removal of the cilia, which results in a loss of the voltage-activated Ca channels (Dunlap, 1977), or addition of extracellular Ba both tended to linearize the steady state I-V relations.8. Injections of Cs and TEA tended to linearize the steady state I-V relations, but did not result in either a conversion to an all-or-none spike or a discontinuity in the depolarizing steady-state I-V relations.9. It is concluded that in Paramecium a Ca-activated K conductance short-circuits the inward current of the regenerative Ca response, preventing all-or-none behaviour. The occurrence of plateau spikes following EGTA injection indicates that the Ca conductance inactivates very slowly in face of a maintained depolarization. Such slow Ca-inactivation is consistent with the slow relaxation of Ca-dependent ciliary reversal that occurs during maintained depolarization.10. The possibility is discussed that injection of EGTA may also enhance the Ca conductance.
摘要
  1. 采用细胞内注射、记录和通电方法,研究了细胞内钙在调节尾草履虫电行为中的作用。

  2. 注射乙二醇双四乙酸(EGTA)可将归因于钙内向电流的分级再生反应转变为全或无动作电位。EGTA注射还导致外向电流的稳态电流-电压关系出现间断,但对超极化电流-电压反应影响不大。

  3. 注射EGTA的细胞产生的全或无尖峰的超射幅度,随着外部钙浓度增加十倍约增加29毫伏,且与外部钾和钠浓度的变化无关。

  4. EGTA诱导的全或无动作电位倾向于产生可持续长达20秒的平台期。在平台期,膜缓慢复极化至临界电位,在此之后迅速发生复极化。

  5. 注射10(-6)M游离钙作为钙-EGTA缓冲液使膜超极化,并减少内向电流脉冲引起的电位变化。这些反应与钾电导增加一致。

  6. 在EGTA平台期,纤毛的反向摆动表明细胞内钙增加,因此EGTA不能像钙进入纤毛那样迅速地将其络合。因此,运动装置的反向似乎在比激活推测的钙依赖性钾系统所需浓度更低的细胞内钙浓度下被激活。

  7. 在未注射的细胞中,去除纤毛(这会导致电压激活的钙通道丧失(邓拉普,1977年))或添加细胞外钡都倾向于使稳态电流-电压关系线性化。

  8. 注射铯和四乙铵倾向于使稳态电流-电压关系线性化,但既不会导致转变为全或无尖峰,也不会导致去极化稳态电流-电压关系出现间断。

  9. 得出的结论是,在草履虫中,钙激活的钾电导使再生钙反应的内向电流短路,从而阻止全或无行为。EGTA注射后出现平台期尖峰表明,面对持续的去极化,钙电导失活非常缓慢。这种缓慢的钙失活与持续去极化期间发生的钙依赖性纤毛反向缓慢松弛一致。

  10. 讨论了注射EGTA也可能增强钙电导的可能性。

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